Eaton is a diversified power management company providing energy-efficient solutions that help our customers effectively manage electrical, hydraulic and mechanical power. The company is a global technology leader in aerospace fuel, hydraulic, electric and actuation systems for commercial and military use; and truck and automotive drivetrain and powertrain systems for performance, fuel economy and safety; electrical products, systems and services for power quality, distribution, control, and transmission. Eaton India Innovation Center (EIIC) has an opening for Lead Engineer - Systems Engineering. This position will be based in Pune, India.
EIIC Office of Chief Engineer (OCE) organization is aligned to CTO’s strategy to drive “One Eaton Engineering Excellence”. EIIC OCE will work with global Engineering business engineering leaders from Electrical and Industrial Sector businesses.
The position will be responsible for systems engineering activities, pertaining to electrical systems, with initial focus on Data Centers. Responsibilities include systems modeling, systems requirements, system architecture/ design tradeoffs for Electrical Systems. Activities would span systems engineering, modelling and validation activities for new product development including, analyzing requirements and assessing compliance, defining interfaces, flowdown of system requirements to subsystems & components, system architecture design tradeoffs, around Systems Engineering (SE) centric methodologies, processes and practices.
A successful candidate will need knowledge and prior experience in systems engineering pertaining to Electrical Systems product development process at system and subsystem levels, and serve as an practitioner in systems engineering, and ensure mature systems engineering processes, including adoption of relevant tools across the systems engineering lifecycle.
• Apply systems engineering and MBSE principles to define, model, analyze, and evaluate complex data center electrical and infrastructure architectures.
• Develop and maintain system-level architecture models spanning requirements, functional, logical, and physical views for data center applications.
• Integrate multi-domain models across electrical power, thermal management, controls, cooling infrastructure, mechanical systems, software, and IT load domains.
• Establish modeling assumptions, interfaces, abstraction levels, and interoperability standards to ensure consistency across architecture and performance models.
• Connect architecture models with discipline-specific analysis models using standards and workflows such as FMU, co-simulation, and digital engineering toolchains.
• Model coupled system behaviors including electrical losses, thermal response, control strategies, reliability considerations, and operational scenarios.
• Perform electrical system analyses such as steady-state and transient studies, power flow, efficiency and loss modeling, fault analysis, protection coordination, and disturbance response.
• Analyze data center power distribution architectures from utility interface and MV/LV distribution through UPS, switchgear, transformers, PDUs, rack-level distribution, and IT loads.
• Evaluate conventional and emerging architectures, including centralized versus distributed power conversion, modular blocks, scalable designs, and alternative power delivery approaches.
• Conduct multi-attribute trade-space analysis to support architecture down-selection using metrics such as cost, efficiency, energy use, thermal performance, availability, resilience, footprint, maintainability, and scalability.
• Develop decision-support models that quantify architectural trade-offs and translate modeling results into clear, evidence-based recommendations.
• Validate models against design data, test results, vendor inputs, and operational scenarios to ensure appropriate fidelity and credibility.
• Collaborate with architecture, electrical hardware, thermal, controls, software, mechanical, reliability, and program teams to align models, assumptions, interfaces, and decisions.
• Serve as the technical focal point for data center system modeling, ensuring work is aligned with program objectives, customer needs, and architecture tradeoff workflows.
• Apply and influence modeling methods, standards, and best practices across MBSE, electrical analysis, thermal-fluid modeling, controls simulation, reliability analysis, optimization, and CAD-enabled workflows.
• Use relevant tools such as CATIA Magic, IBM Rhapsody, DOORS, JAZZ, MATLAB/Simulink, ETAP, SKM, PSCAD, or equivalent platforms.
• Communicate complex modeling outcomes to technical leadership, customers, and stakeholders through concise, decision-ready narratives.
• Experience with reliability, availability, maintainability, and resilience analysis, including redundancy architectures, N/N+1/2N concepts, single points of failure, MTBF/RBD concepts, expected downtime, and operational risk scenarios.
• Ability to perform multi-attribute trade-space analysis using constraints, objectives, scenarios, sensitivity analysis, Pareto comparison, weighting methods, and decision-ready KPI summaries.
• Experience integrating MBSE (e.g. System Composer), analysis, BIM/Revit, CAD, digital twin, FMU/co-simulation, and data-management workflows to support architecture evaluation and model reuse.
• Strong analytical problem-solving and technical communication skills, with the ability to translate complex modeling results into clear recommendations for technical leaders, customers, and cross-functional stakeholders;
• INCOSE ASEP/CSEP or equivalent systems engineering certification is preferred.
• Good familiarity with MBSE methodologies/ practices
• Exposure to Lean/ Agile methodologies and practices
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